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the Department of Stem Cell and Regenerative Biology at Harvard University, is working to identify the mechanisms controlling mammalian brain development and to define cellular and molecular pathways disrupted in
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research integrates fundamental immunology, functional genomics, and translational cell engineering to uncover mechanisms of immune regulation and translate these discoveries into next-generation
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mission and Mason Space Center (MSC). The Landolt project will develop and operate a small satellite with calibrated light sources onboard to simulate a star and use ground telescopes to transfer absolute
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mechanisms, biomarkers, and therapeutic targets in solid tumors through multi-omics data analysis of large pan-cancer datasets, including proteogenomic data generated across high-throughput profiling platforms
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environment spanning solid mechanics, materials science, X-ray characterization, condensed matter physics, granular mechanics, and network theory. Required Qualifications* Applicants should have: A Ph.D. in
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— investigating how mechanical forces from focused ultrasound alter immune cell function and tumor microenvironments Acoustic tool development — designing next-generation transducers, wearable ultrasound devices
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related field. Strong background in solid mechanics, materials physics, and crystallography. Experience developing tools using Python, C/C++, MATLAB, etc. Demonstrated ability to conduct independent
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University of Maryland School of Medicine, Baltimore | Baltimore, Maryland | United States | 3 months ago
positions. The successful candidate will join a multidisciplinary research team investigating novel immunotherapeutic strategies to treat solid cancers caused by chronic HIV infection and inflammatory
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, delay thermal breakthrough, and enhance long-term thermal recovery from EGS. This position also aims to model, evaluate, and optimize innovative engineering solutions, including chemical, mechanical
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studies the mechanisms by which chronic viral infections suppress antiviral immunity and drive T cell exhaustion to facilitate viral persistence. We also have a major interest in how chronic viral